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The objective of this work is to develop a method which solves the nonlinear elastohydrodynamic contact problem in a fast and precise way using model order reduction techniques. The reduction procedure is based on a projection onto a low-dimensional subspace using different hyper-reduction procedures. The method provides fast and highly accurate reduced order models for stationary and transient, Newtonian and Non-Newtonian EHD line and point contact problems.
EHD --- Modellordnungsreduktion --- Newton-Raphson method --- model order reduction --- Newton-VerfahrenEHD
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Analyse numérique. --- Numerical analysis --- Newton-Raphson method --- Newton, Méthode de.
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Differentiable dynamical systems --- Equations, Quadratic --- Newton-Raphson method
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Interpolation (mathématiques) --- Newton, Méthode de --- Interpolation --- Newton-Raphson method. --- Integration numerique
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Analyse numérique --- Numerical analysis. --- Newton-Raphson method. --- Newton, Méthode de --- Fortran (langage de programmation)
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Computer programs. --- Trajectory optimization. --- Design analysis. --- Equations of motion. --- Newton-Raphson method.
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Feedforward control. --- Neural nets. --- Newton-Raphson method. --- Nonlinearity. --- Optimization. --- Real time operation.
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